source: branches/alma/src/Scantable.h@ 1700

Last change on this file since 1700 was 1700, checked in by WataruKawasaki, 15 years ago

New Development: Yes

JIRA Issue: Yes (CAS-1800 + CAS-1807)

Ready to Release: Yes

Interface Changes: Yes

What Interface Changed: added parameters fitfunc for sdfit and clip, clipmaxmin, clipoutside for sdflag

Test Programs:

Put in Release Notes: No

Module(s): sdfit, sdflag

Description: Added a parameter for enabling Lorentzian line fitting with sdfit, and parameters for y-axis clipping with sdflag. Also 4 files for Lorentzian function class are (Lorentzian1D*) added.


  • Property svn:eol-style set to native
  • Property svn:keywords set to Author Date Id Revision
File size: 16.2 KB
RevLine 
[824]1//
2// C++ Interface: Scantable
3//
4// Description:
5//
6//
7// Author: Malte Marquarding <asap@atnf.csiro.au>, (C) 2005
8//
9// Copyright: See COPYING file that comes with this distribution
10//
11//
12#ifndef ASAPSCANTABLE_H
13#define ASAPSCANTABLE_H
[2]14
15// STL
16#include <string>
17#include <vector>
18// AIPS++
[455]19#include <casa/aips.h>
[322]20#include <casa/Arrays/MaskedArray.h>
[80]21#include <casa/BasicSL/String.h>
[824]22#include <casa/Utilities/CountedPtr.h>
23
[1446]24#include <casa/Exceptions/Error.h>
25
[322]26#include <coordinates/Coordinates/SpectralCoordinate.h>
[824]27
[80]28#include <tables/Tables/Table.h>
[322]29#include <tables/Tables/ArrayColumn.h>
30#include <tables/Tables/ScalarColumn.h>
31
[824]32#include <measures/TableMeasures/ScalarMeasColumn.h>
33
[1446]34#include <casa/Arrays/Vector.h>
35#include <casa/Quanta/Quantum.h>
36
[894]37#include "Logger.h"
[901]38#include "STHeader.h"
[824]39#include "STFrequencies.h"
40#include "STWeather.h"
41#include "STFocus.h"
42#include "STTcal.h"
43#include "STMolecules.h"
44#include "STSelector.h"
[860]45#include "STHistory.h"
[896]46#include "STPol.h"
[960]47#include "STFit.h"
[972]48#include "STFitEntry.h"
[2]49
[824]50namespace asap {
[2]51
[824]52/**
53 * This class contains and wraps a casa::Table, which is used to store
54 * all the information. This can be either a MemoryTable or a
55 * disk based Table.
56 * It provides access functions to the underlying table
57 * It contains n subtables:
58 * @li weather
59 * @li frequencies
60 * @li molecules
61 * @li tcal
62 * @li focus
63 * @li fits
64 *
65 * @brief The main ASAP data container
66 * @author Malte Marquarding
67 * @date
68 * @version
69*/
[890]70class Scantable : private Logger
[824]71{
[902]72
73friend class STMath;
74
[2]75public:
[824]76 /**
77 * Default constructor
78 */
[1350]79 explicit Scantable(casa::Table::TableType ttype = casa::Table::Memory);
[19]80
[824]81 /**
82 * Create a Scantable object form an existing table on disk
83 * @param[in] name the name of the existing Scantable
84 */
[1385]85 explicit Scantable(const std::string& name, casa::Table::TableType ttype = casa::Table::Memory);
[2]86
[824]87 /// @fixme this is only sensible for MemoryTables....
88 Scantable(const Scantable& other, bool clear=true);
[161]89
[824]90 /**
91 * Destructor
92 */
93 virtual ~Scantable();
[745]94
[824]95 /**
96 * get a const reference to the underlying casa::Table
[1104]97 * @return const \ref casa::Table reference
[824]98 */
99 const casa::Table& table() const;
[19]100
[824]101 /**
102 * get a reference to the underlying casa::Table with the Selection
103 * object applied if set
104 * @return casa::Table reference
105 */
106 casa::Table& table();
[21]107
[845]108
109 /**
110 * Get a handle to the selection object
111 * @return constant STSelector reference
112 */
113 const STSelector& getSelection() const { return selector_; }
114
115 /**
116 * Set the data to be a subset as defined by the STSelector
117 * @param selection a STSelector object
118 */
[824]119 void setSelection(const STSelector& selection);
[845]120
121 /**
122 * unset the selection of the data
123 */
[824]124 void unsetSelection();
125 /**
126 * set the header
[1295]127 * @param[in] sth an STHeader object
[824]128 */
[901]129 void setHeader( const STHeader& sth );
[386]130
[824]131 /**
132 * get the header information
[901]133 * @return an STHeader object
[824]134 */
[901]135 STHeader getHeader( ) const;
[1068]136
[824]137 /**
138 * Checks if the "other" Scantable is conformant with this,
139 * i.e. if header values are the same.
140 * @param[in] other another Scantable
141 * @return true or false
142 */
143 bool conformant( const Scantable& other);
[430]144
[824]145 /**
[1068]146 *
147 * @param stype The type of the source, 0 = on, 1 = off
148 */
149 void setSourceType(int stype);
150
151
152 /**
[1104]153 * The number of scans in the table
[824]154 * @return number of scans in the table
155 */
[845]156 int nscan() const;
[490]157
[915]158 casa::MEpoch::Types getTimeReference() const;
[21]159
[1603]160
161 casa::MEpoch getEpoch(int whichrow) const;
162
[824]163 /**
164 * Get global antenna position
[845]165 * @return casa::MPosition
[824]166 */
167 casa::MPosition getAntennaPosition() const;
[490]168
[1603]169 /**
170 * the @ref casa::MDirection for a specific row
171 * @param[in] whichrow the row number
172 * return casa::MDirection
173 */
[987]174 casa::MDirection getDirection( int whichrow ) const;
[1603]175
176 /**
177 * get the direction type as a string, e.g. "J2000"
178 * @param[in] whichrow the row number
179 * return the direction string
180 */
[1068]181 std::string getDirectionString( int whichrow ) const;
182
[1603]183 /**
184 * set the direction type as a string, e.g. "J2000"
185 * @param[in] refstr the direction type
186 */
[987]187 void setDirectionRefString(const std::string& refstr="");
[1603]188
[1104]189 /**
190 * get the direction reference string
191 * @return a string describing the direction reference
192 */
[1603]193 std::string getDirectionRefString() const;
[987]194
[824]195 /**
[845]196 * Return the Flux unit of the data, e.g. "Jy" or "K"
197 * @return string
[824]198 */
199 std::string getFluxUnit() const;
[472]200
[824]201 /**
[845]202 * Set the Flux unit of the data
203 * @param unit a string representing the unit, e.g "Jy" or "K"
[824]204 */
205 void setFluxUnit( const std::string& unit );
[472]206
[824]207 /**
[1189]208 * Set the Stokes type of the data
[1295]209 * @param feedtype a string representing the type, e.g "circular" or "linear"
[1189]210 */
211 void setFeedType( const std::string& feedtype );
212
213 /**
[824]214 *
[845]215 * @param instrument a string representing an insturment. see xxx
[824]216 */
217 void setInstrument( const std::string& instrument );
[2]218
[845]219 /**
220 * (Re)calculate the azimuth and elevationnfor all rows
221 */
[824]222 void calculateAZEL();
[745]223
[824]224 /**
[845]225 * "hard" flag the data, this flags everything selected in setSelection()
[1104]226 * param[in] msk a boolean mask of length nchan describing the points to
227 * to be flagged
[824]228 */
[1400]229 //void flag( const std::vector<bool>& msk = std::vector<bool>());
230 void flag( const std::vector<bool>& msk = std::vector<bool>(), bool unflag=false);
[455]231
[852]232 /**
[1656]233 * Flag the data in a row-based manner. (CAS-1433 Wataru Kawasaki)
234 * param[in] rows list of row numbers to be flagged
235 */
236 void flagRow( const std::vector<casa::uInt>& rows = std::vector<casa::uInt>(), bool unflag=false);
237
238 /**
239 * Get flagRow info at the specified row. If true, the whole data
240 * at the row should be flagged.
241 */
242 bool getFlagRow(int whichrow) const
243 { return (flagrowCol_(whichrow) > 0); }
244
245 /**
[1700]246 * Flag the data outside a specified range (in a channel-based manner).
247 * (CAS-1807 Wataru Kawasaki)
248 */
249 void Scantable::clip(const Float uthres, const Float dthres, bool clipoutside, bool unflag);
250
251 /**
[852]252 * Return a list of row numbers with respect to the original table.
[902]253 * @return a list of unsigned ints
[852]254 */
255 std::vector<unsigned int> rownumbers() const;
[845]256
[852]257
[845]258 /**
259 * Get the number of beams in the data or a specific scan
260 * @param scanno the scan number to get the number of beams for.
261 * If scanno<0 the number is retrieved from the header.
262 * @return an integer number
263 */
[824]264 int nbeam(int scanno=-1) const;
[845]265 /**
266 * Get the number of IFs in the data or a specific scan
267 * @param scanno the scan number to get the number of IFs for.
268 * If scanno<0 the number is retrieved from the header.
269 * @return an integer number
270 */
[824]271 int nif(int scanno=-1) const;
[845]272 /**
273 * Get the number of polarizations in the data or a specific scan
274 * @param scanno the scan number to get the number of polarizations for.
275 * If scanno<0 the number is retrieved from the header.
276 * @return an integer number
277 */
[824]278 int npol(int scanno=-1) const;
[794]279
[896]280 std::string getPolType() const;
281
[845]282
283 /**
284 * Get the number of integartion cycles
285 * @param scanno the scan number to get the number of rows for.
286 * If scanno<0 the number is retrieved from the header.
[1104]287 * @return the number of rows (for the specified scanno)
[845]288 */
[824]289 int nrow(int scanno=-1) const;
[794]290
[1111]291 int getBeam(int whichrow) const;
292 std::vector<uint> getBeamNos() { return getNumbers(beamCol_); }
[50]293
[847]294 int getIF(int whichrow) const;
[1111]295 std::vector<uint> getIFNos() { return getNumbers(ifCol_); }
296
[847]297 int getPol(int whichrow) const;
[1111]298 std::vector<uint> getPolNos() { return getNumbers(polCol_); }
299
300 std::vector<uint> getScanNos() { return getNumbers(scanCol_); }
[865]301 int getScan(int whichrow) const { return scanCol_(whichrow); }
[1111]302
[1446]303 //TT addition
304 std::vector<uint> getMolNos() {return getNumbers(mmolidCol_); }
305
[1111]306 /**
307 * Get the number of channels in the data or a specific IF. This currently
308 * varies only with IF number
309 * @param ifno the IF number to get the number of channels for.
310 * If ifno<0 the number is retrieved from the header.
311 * @return an integer number
312 */
313 int nchan(int ifno=-1) const;
[923]314 int getChannels(int whichrow) const;
[206]315
[1111]316 int ncycle(int scanno=-1) const;
317 int getCycle(int whichrow) const { return cycleCol_(whichrow); }
318
[847]319 double getInterval(int whichrow) const
320 { return integrCol_(whichrow); }
[845]321
[865]322 float getTsys(int whichrow) const
323 { return casa::Vector<casa::Float>(tsysCol_(whichrow))(0); }
[847]324 float getElevation(int whichrow) const
325 { return elCol_(whichrow); }
326 float getAzimuth(int whichrow) const
327 { return azCol_(whichrow); }
[865]328 float getParAngle(int whichrow) const
[847]329 { return paraCol_(whichrow); }
[1634]330 int getTcalId(int whichrow) const
331 { return mtcalidCol_(whichrow); }
[386]332
[865]333 std::string getSourceName(int whichrow) const
334 { return srcnCol_(whichrow); }
335
[847]336 std::vector<bool> getMask(int whichrow) const;
[896]337 std::vector<float> getSpectrum(int whichrow,
[905]338 const std::string& poltype = "" ) const;
[847]339
[884]340 void setSpectrum(const std::vector<float>& spec, int whichrow);
341
[902]342 std::string getPolarizationLabel(int index, const std::string& ptype) const
343 { return STPol::getPolLabel(index, ptype ); }
[401]344
[845]345 /**
346 * Write the Scantable to disk
347 * @param filename the output file name
348 */
[824]349 void makePersistent(const std::string& filename);
[745]350
[860]351 std::vector<std::string> getHistory() const
352 { return historyTable_.getHistory(); };
[483]353
[860]354 void addHistory(const std::string& hist) { historyTable_.addEntry(hist); }
[488]355
[860]356 void appendToHistoryTable(const STHistory& otherhist)
357 { historyTable_.append(otherhist); }
358
[824]359 std::string summary(bool verbose=false);
360 std::string getTime(int whichrow=-1, bool showdate=true) const;
[1350]361 double getIntTime(int whichrow) const { return integrCol_(whichrow); }
[19]362
[847]363 // returns unit, conversion frame, doppler, base-frame
[18]364
[847]365 /**
366 * Get the frequency set up
367 * This is forwarded to the STFrequencies subtable
368 * @return unit, frame, doppler
369 */
370 std::vector<std::string> getCoordInfo() const
371 { return freqTable_.getInfo(); };
372
373 void setCoordInfo(std::vector<string> theinfo)
374 { return freqTable_.setInfo(theinfo); };
375
[865]376
377 std::vector<double> getAbcissa(int whichrow) const;
378
[847]379 std::string getAbcissaLabel(int whichrow) const;
380 std::vector<double> getRestFrequencies() const
381 { return moleculeTable_.getRestFrequencies(); }
[1446]382 std::vector<double> getRestFrequency(int id) const
383 { return moleculeTable_.getRestFrequency(id); }
[847]384
[1446]385 /**
[1170]386 void setRestFrequencies(double rf, const std::string& name = "",
387 const std::string& = "Hz");
[1446]388 **/
389 // Modified by Takeshi Nakazato 05/09/2008
390 /***
391 void setRestFrequencies(vector<double> rf, const vector<std::string>& name = "",
392 const std::string& = "Hz");
393 ***/
394 void setRestFrequencies(vector<double> rf,
395 const vector<std::string>& name = vector<std::string>(1,""),
396 const std::string& = "Hz");
[847]397
[1446]398 //void setRestFrequencies(const std::string& name);
399 void setRestFrequencies(const vector<std::string>& name);
400
[1360]401 void shift(int npix);
402
[987]403 void convertDirection(const std::string& newframe);
404
[824]405 STFrequencies& frequencies() { return freqTable_; }
[1375]406 const STFrequencies& frequencies() const { return freqTable_; }
[824]407 STWeather& weather() { return weatherTable_; }
[1375]408 const STWeather& weather() const { return weatherTable_; }
[824]409 STFocus& focus() { return focusTable_; }
[1375]410 const STFocus& focus() const { return focusTable_; }
[824]411 STTcal& tcal() { return tcalTable_; }
[1375]412 const STTcal& tcal() const { return tcalTable_; }
[824]413 STMolecules& molecules() { return moleculeTable_; }
[1375]414 const STMolecules& molecules() const { return moleculeTable_; }
[860]415 STHistory& history() { return historyTable_; }
[1375]416 const STHistory& history() const { return historyTable_; }
[972]417 STFit& fit() { return fitTable_; }
[1375]418 const STFit& fit() const { return fitTable_; }
[2]419
[902]420 std::vector<std::string> columnNames() const;
[896]421
[972]422 void addFit(const STFitEntry& fit, int row);
423 STFitEntry getFit(int row) const
424 { STFitEntry fe; fitTable_.getEntry(fe, mfitidCol_(row)); return fe; }
425
[1388]426 //Added by TT
427 /**
428 * Get the antenna name
429 * @return antenna name string
430 */
431 std::string getAntennaName() const;
432
433 /**
434 * For GBT MS data only. check a scan list
435 * against the information found in GBT_GO table for
436 * scan number orders to get correct pairs.
[1446]437 * @param[in] scan list
438 * @return status
[1388]439 */
440 int checkScanInfo(const std::vector<int>& scanlist) const;
441
442 /**
[1446]443 * Get the direction as a vector, for a specific row
[1388]444 * @param[in] whichrow the row numbyyer
[1446]445 * @return the direction in a vector
[1388]446 */
447 std::vector<double> getDirectionVector(int whichrow) const;
448
[1446]449 /**
450 * Reshape spectrum
451 * @param[in] nmin, nmax minimum and maximum channel
452 * @param[in] irow row number
453 *
454 * 30/07/2008 Takeshi Nakazato
455 **/
456 void reshapeSpectrum( int nmin, int nmax ) throw( casa::AipsError );
457 void reshapeSpectrum( int nmin, int nmax, int irow ) ;
458
459 /**
460 * Change channel number under fixed bandwidth
461 * @param[in] nchan, dnu new channel number and spectral resolution
462 * @param[in] irow row number
463 *
464 * 27/08/2008 Takeshi Nakazato
465 **/
466 void regridChannel( int nchan, double dnu ) ;
467 void regridChannel( int nchan, double dnu, int irow ) ;
[1656]468
[1446]469
[824]470private:
[896]471
472 casa::Matrix<casa::Float> getPolMatrix( casa::uInt whichrow ) const;
473
[824]474 /**
475 * Turns a time vale into a formatted string
476 * @param x
477 * @return
478 */
479 std::string formatSec(casa::Double x) const;
[18]480
[824]481 std::string formatTime(const casa::MEpoch& me, bool showdate)const;
[22]482
[824]483 /**
484 * Turns a casa::MDirection into a nicely formatted string
485 * @param md an casa::MDirection
486 * @return
487 */
488 std::string formatDirection(const casa::MDirection& md) const;
[19]489
[286]490
[824]491 /**
492 * Create a unique file name for the paged (temporary) table
493 * @return just the name
494 */
495 static casa::String generateName();
[286]496
[824]497 /**
498 * attach to cached columns
499 */
500 void attach();
[50]501
[824]502 /**
503 * Set up the main casa::Table
504 */
505 void setupMainTable();
[88]506
[859]507 void attachSubtables();
[865]508 void copySubtables(const Scantable& other);
509
[824]510 /**
511 * Convert an "old" asap1 style row index into a new index
512 * @param[in] therow
513 * @return and index into @table_
514 */
515 int rowToScanIndex(int therow);
[212]516
[1111]517 std::vector<uint> getNumbers(casa::ScalarColumn<casa::uInt>& col);
518
[1030]519 static const casa::uInt version_ = 2;
[286]520
[824]521 STSelector selector_;
[236]522
[824]523 casa::Table::TableType type_;
[465]524
[824]525 // the actual data
526 casa::Table table_;
527 casa::Table originalTable_;
[745]528
[824]529 STTcal tcalTable_;
530 STFrequencies freqTable_;
531 STWeather weatherTable_;
532 STFocus focusTable_;
533 STMolecules moleculeTable_;
[860]534 STHistory historyTable_;
[960]535 STFit fitTable_;
[860]536
[824]537 // Cached Columns to avoid reconstructing them for each row get/put
[847]538 casa::ScalarColumn<casa::Double> integrCol_;
[824]539 casa::MDirection::ScalarColumn dirCol_;
[847]540 casa::MEpoch::ScalarColumn timeCol_;
[923]541 casa::ScalarColumn<casa::Float> azCol_;
542 casa::ScalarColumn<casa::Float> elCol_;
[824]543 casa::ScalarColumn<casa::Float> paraCol_;
544 casa::ScalarColumn<casa::String> srcnCol_, fldnCol_;
[1656]545 casa::ScalarColumn<casa::uInt> scanCol_, beamCol_, ifCol_, polCol_, cycleCol_, flagrowCol_;
[1068]546 casa::ScalarColumn<casa::Int> rbeamCol_, srctCol_;
[865]547 casa::ArrayColumn<casa::Float> specCol_, tsysCol_;
[824]548 casa::ArrayColumn<casa::uChar> flagsCol_;
[430]549
[824]550 // id in frequencies table
551 casa::ScalarColumn<casa::uInt> mfreqidCol_;
552 // id in tcal table
553 casa::ScalarColumn<casa::uInt> mtcalidCol_;
[430]554
[824]555 casa::ArrayColumn<casa::String> histitemCol_;
[972]556 casa::ScalarColumn<casa::Int> mfitidCol_;
[824]557 casa::ScalarColumn<casa::uInt> mweatheridCol_;
[322]558
[824]559 casa::ScalarColumn<casa::uInt> mfocusidCol_;
560
561 casa::ScalarColumn<casa::uInt> mmolidCol_;
562
[896]563 static std::map<std::string, STPol::STPolFactory *> factories_;
564 void initFactories();
565
[1656]566 /**
567 * Add an auxiliary column to the main table and attach it to a
568 * cached column. Use for adding new columns that the original asap2
569 * tables do not have.
570 * @param[in] col reference to the cached column to be attached
571 * @param[in] colName column name in asap table
572 * @param[in] defValue default value to fill in the column
573 *
574 * 25/10/2009 Wataru Kawasaki
575 */
576 template<class T, class T2> void attachAuxColumnDef(casa::ScalarColumn<T>&,
577 const casa::String&,
578 const T2&);
579 template<class T, class T2> void attachAuxColumnDef(casa::ArrayColumn<T>&,
580 const casa::String&,
581 const casa::Array<T2>&);
[2]582};
583
[824]584
585} // namespace
586
[2]587#endif
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